A research team at the University of Münster led by chemist Prof Frank Glorius has synthesized so-called heteroatom-substituted cage-like 3D molecules. The innovative structures could help address key ...
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Chemists snap together complex 3D molecules from highly reactive 'radicals'—without losing their shape
Building the complex 3D molecules needed for new medicines has always been a bit like assembling a puzzle with pieces that keep trying to flip over. Now, chemists at Scripps Research have found a way ...
Chemists have synthesized so-called heteroatom-substituted cage-like 3D molecules. The innovative structures are created by precisely inserting a triatomic unit into the strained ring of a reaction ...
A report in the journal Science from researchers in the UW–Madison Department of Chemistry represents a significant advance in making the types of molecules needed in drug development. Molecules with ...
A hybrid microscope allows scientists to simultaneously image the full 3D orientation and position of an ensemble of molecules, such as labeled proteins inside cells. The microscope combines polarized ...
(Nanowerk Spotlight) The field of surface-enhanced Raman spectroscopy (SERS) has long held the promise of single-molecule detection, but achieving this level of sensitivity in a reliable and ...
When studying chemistry, you will encounter the terms HOMO and LUMO."I've seen molecular orbitals in textbooks, but what do ...
As its name suggests, ring-shaped “cage molecules” resemble a cage, and it is this three-dimensional structure that makes them significantly more stable than related, flat molecules. Consequently, ...
The radical rebound. Computational visualization showing the carbon-centered radical (orange spin density) binding to the nickel-centered radical (blue spin density). Two perspectives are shown. LA ...
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